{"id":2508,"date":"2017-10-04T11:06:15","date_gmt":"2017-10-04T11:06:15","guid":{"rendered":"https:\/\/blog.kolabtree.com\/?p=2508"},"modified":"2018-02-26T13:08:47","modified_gmt":"2018-02-26T13:08:47","slug":"ligo-nobel-collaboration","status":"publish","type":"post","link":"https:\/\/www.kolabtree.com\/blog\/fr\/ligo-nobel-collaboration\/","title":{"rendered":"Le prix Nobel LIGO-VIRGO : Le r\u00e9sultat d'une collaboration transfrontali\u00e8re"},"content":{"rendered":"<p>Imaginez que vous placez une balle lourde au milieu d'une grande feuille qui est maintenue tendue. La balle va d\u00e9former la feuille et cr\u00e9er une bosse. Un objet plac\u00e9 pr\u00e8s de la balle tombera vers elle \u00e0 cause de la bosse. De la m\u00eame mani\u00e8re, les objets de l'Univers cr\u00e9ent \u00e9galement des \"bosses\" ou des d\u00e9formations dans le tissu de l'espace et du temps. Comme ces masses sont aussi constamment en mouvement et tournent les unes autour des autres, elles envoient des ondulations dans l'espace-temps. Les masses plus l\u00e9g\u00e8res qui s'approchent de la masse lourde tombent vers elle. Ces ondulations sont appel\u00e9es \"ondes gravitationnelles\".<\/p>\n<p>Il y a plus de cent ans, en 1915, Albert Einstein a sugg\u00e9r\u00e9 que les grandes masses dans l'espace avaient la capacit\u00e9 de d\u00e9former ou de plier l'espace et le temps, une th\u00e9orie qui est rest\u00e9e une th\u00e9orie jusqu'\u00e0 hier.<\/p>\n<p>Le 3 octobre 2017, le prix Nobel de physique <a href=\"http:\/\/www.bbc.co.uk\/news\/science-environment-41476648\" target=\"_blank\" rel=\"noopener\">s'est vu attribuer<\/a> \u00e0 l'\u00e9quipe qui a d\u00e9tect\u00e9 et enregistr\u00e9 les ondes gravitationnelles. Rainer Weiss, du Massachusetts Institute of Technology (MIT), ainsi que Barry Barish et Kip Thorne, du California Institute of Technology (Caltech), sont tous membres de l'\u00e9quipe de l'Observatoire d'ondes gravitationnelles par interf\u00e9rom\u00e8tre laser (LIGO). Weiss a re\u00e7u la moiti\u00e9 du prix de 9 millions de couronnes ($1,1 million), tandis que Thorne et Barish se partageront l'autre moiti\u00e9. Leur d\u00e9couverte est consid\u00e9r\u00e9e comme l'une des plus grandes perc\u00e9es scientifiques de notre \u00e9poque.<\/p>\n<p>Les ondes gravitationnelles g\u00e9n\u00e9r\u00e9es par les \u00e9v\u00e9nements cosmiques diminuent tellement en force au moment o\u00f9 elles atteignent la terre que seuls des d\u00e9tecteurs extr\u00eamement sensibles comme celui de LIGO peuvent les capter. Bien que ces ondes aient \u00e9t\u00e9 d\u00e9tect\u00e9es \u00e0 trois reprises auparavant, le 14 ao\u00fbt 2017, un signal d'ondes gravitationnelles produit par la fusion de deux trous noirs a \u00e9t\u00e9 d\u00e9tect\u00e9 conjointement par les d\u00e9tecteurs LIGO aux \u00c9tats-Unis (en Louisiane et \u00e0 Washington) et le d\u00e9tecteur Virgo en Europe (Pise, Italie).<\/p>\n<p>Le site <a href=\"https:\/\/www.ligo.caltech.edu\/news\/ligo20170927\" target=\"_blank\" rel=\"noopener\">Communiqu\u00e9 de presse de LIGO<\/a> d\u00e9clare que,<\/p>\n<p>\"La collaboration scientifique LIGO et la collaboration Virgo signalent la premi\u00e8re d\u00e9tection conjointe d'ondes gravitationnelles avec les d\u00e9tecteurs LIGO et Virgo. Il s'agit de la quatri\u00e8me d\u00e9tection annonc\u00e9e d'un syst\u00e8me de trous noirs binaires et du premier signal significatif d'ondes gravitationnelles enregistr\u00e9 par le d\u00e9tecteur Virgo, et cela met en \u00e9vidence le potentiel scientifique d'un r\u00e9seau de trois d\u00e9tecteurs d'ondes gravitationnelles. \"<\/p>\n<p><iframe loading=\"lazy\" src=\"https:\/\/www.youtube.com\/embed\/8XYLzM5x7g0\" width=\"560\" height=\"315\" frameborder=\"0\" allowfullscreen=\"allowfullscreen\"><\/iframe><\/p>\n<p>Cette perc\u00e9e est le r\u00e9sultat d'une collaboration transfrontali\u00e8re entre divers organismes et laboratoires partenaires \u00e0 travers le monde. Exploit\u00e9 par Caltech et le MIT, LIGO est financ\u00e9 par la National Science Foundation (NSF) des \u00c9tats-Unis et a re\u00e7u le soutien financier de l'Australie, de l'Allemagne et du Royaume-Uni pour la construction de ses d\u00e9tecteurs. Le projet a \u00e9galement \u00e9t\u00e9\u00a0<a href=\"http:\/\/www.ligo.org\/funding.php\" target=\"_blank\" rel=\"noopener\">support\u00e9 par<\/a> by India, Italy, Spain, Scotland, Korea, Canada, Scotland, the European Union, Hungary and Taiwan, among others. Its <a href=\"https:\/\/www.kolabtree.com\/blog\/fr\/ensuring-reproducibility-in-ai-driven-research-how-freelance-experts-can-help-in-biotech-and-healthcare\/\">recherche<\/a> partners are collaborative organizations in themselves, based in Europe, US, Japan and Australia.<\/p>\n<p>En tant qu'organisation qui croit en la d\u00e9mocratisation de l'acc\u00e8s \u00e0 la recherche scientifique, nous pensons que les plus grandes innovations sont les produits de la collaboration transfrontali\u00e8re et interdisciplinaire. R\u00e9cemment, nous avons aid\u00e9 un ing\u00e9nieur, qui effectuait des recherches sur la gravit\u00e9 d'Einstein, \u00e0 trouver une <a href=\"https:\/\/www.kolabtree.com\/find-an-expert\/lester-ingber\/\" target=\"_blank\" rel=\"noopener\">physicien expert<\/a> pour l'aider \u00e0 visualiser l'espace-temps et \u00e0 tracer des graphiques pour l'espace-temps courbe. Lester Ingber, un ancien \u00e9l\u00e8ve de Caltech, est un physicien renomm\u00e9 qui est le chercheur principal d'un projet de superordinateur financ\u00e9 par la NSF. L'\u00e9quipe mondiale de Kolabtree <a href=\"https:\/\/www.kolabtree.com\/find-an-expert\/?utm_source=Ligo\">scientifiques ind\u00e9pendants<\/a>qui viennent du MIT, de Stanford, de Harvard, etc., travaillent sur divers projets scientifiques du monde entier, embrassant le v\u00e9ritable esprit de la recherche scientifique collaborative.<\/p>\n<p>Une collaboration efficace aide les scientifiques \u00e0 surmonter les restrictions g\u00e9ographiques et financi\u00e8res, et permet d'acc\u00e9der \u00e0 des comp\u00e9tences, des connaissances et une expertise qui ne seraient pas disponibles autrement. Rendre la recherche disponible, abordable et accessible stimule l'innovation et le d\u00e9veloppement. Qui aurait cru que l'id\u00e9e d'Einstein, aujourd'hui centenaire, serait enfin r\u00e9alis\u00e9e et remporterait l'un des prix les plus prestigieux de la plan\u00e8te ?<\/p>","protected":false},"excerpt":{"rendered":"<p>Imaginez que vous placez une balle lourde au milieu d'une grande feuille qui est maintenue tendue. La balle va d\u00e9former la feuille et cr\u00e9er une bosse. Un objet plac\u00e9 pr\u00e8s de la balle tombera vers elle \u00e0 cause de la bosse. De la m\u00eame mani\u00e8re, les objets de l'Univers cr\u00e9ent \u00e9galement des \"bosses\" ou des d\u00e9formations dans le tissu.<\/p>\n<div class=\"read-more\"><a href=\"https:\/\/www.kolabtree.com\/blog\/fr\/ligo-nobel-collaboration\/\" title=\"Lire la suite\">Lire la suite<\/a><\/div>","protected":false},"author":12,"featured_media":2510,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":[],"categories":[314],"tags":[369,370],"acf":[],"yoast_head":"<!-- This site is optimized with the Yoast SEO Premium plugin v20.1 (Yoast SEO v20.1) - https:\/\/yoast.com\/wordpress\/plugins\/seo\/ -->\n<title>LIGO&#039;s Nobel Prize: The result of cross-border collaboration<\/title>\n<meta name=\"description\" content=\"Three members of the LIGO team won the Nobel Prize in Physics, 2017. Their breakthrough was the result of the collaborative effort of various organizations.\" \/>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"https:\/\/www.kolabtree.com\/blog\/fr\/ligo-nobel-collaboration\/\" \/>\n<meta property=\"og:locale\" content=\"fr_FR\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"The LIGO-VIRGO Nobel Prize: The result of cross-border collaboration\" \/>\n<meta property=\"og:description\" content=\"Three members of the LIGO team won the Nobel Prize in Physics, 2017. 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